Non Invasive Blood Glucose Monitoring using Pulse and Respiration rate

R. M, Harishna S, V. J, Abinesh V, Anudharani K
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引用次数: 1

Abstract

Diabetes is a prevalent condition that affects millions of people worldwide, posing significant health risks if not properly managed. This project aims to develop a non-invasive blood glucose monitoring device, offering a convenient and safe alternative for diabetic patients. By utilizing the conductivity measurement technique through the penetration of NIR rays, blood glucose levels are estimated based on the pulse rate and respiration rate. The setup involves an Arduino UNO microcontroller, electrodes for measuring conductivity, and a potentiometer to convert the analog signal to digital voltage. The Arduino UNO incorporates an interpolation equation to establish the relationship between voltage and glucose levels, displaying the results on an LCD display. By comparing the obtained glucose value with the normal reference blood glucose range, the device can determine if the patient’s glucose level is normal, high, or low. This technique proves to be time-efficient and cost-effective, reducing pain and minimizing the risk of infection associated with invasive methods.
使用脉搏和呼吸速率进行无创血糖监测
糖尿病是一种影响全世界数百万人的普遍疾病,如果管理不当,将构成重大健康风险。本项目旨在开发一种无创血糖监测设备,为糖尿病患者提供一种方便、安全的替代方案。通过近红外射线的穿透,利用电导率测量技术,根据脉搏率和呼吸率估计血糖水平。该装置包括一个Arduino UNO微控制器、用于测量电导率的电极和一个将模拟信号转换为数字电压的电位器。Arduino UNO集成了一个插值方程来建立电压和葡萄糖水平之间的关系,并将结果显示在LCD显示屏上。通过将获得的血糖值与正常参考血糖范围进行比较,该设备可以确定患者的血糖水平是正常、高还是低。这项技术被证明具有时间效率和成本效益,可以减少疼痛并最大限度地减少与侵入性方法相关的感染风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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